Structural and molecular dysfunctions in granulosa cells: A key contributor to porcine follicular atresia

IF 2.5 3区 生物学 Q3 REPRODUCTIVE BIOLOGY
Yajun Guo, Chen Ma, Shiwei Wang, Xuan Wu, Fanghao Yang, Shenming Zeng
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Abstract

The physiological function and metabolism of granulosa cells (GCs) are highly regulated processes that coordinate cells specification and morphogenesis to produce related cytokines and secretions that are closely associated with follicular development. However, there is no comprehensive understanding of the molecular functions of GCs in follicular atresia. Here, we investigated follicular morphological features, fibrosis, vascular changes, and immune cell distribution. Additionally, we analyzed the correlation between solute carrier transport proteins (SLCs) and amino acids, and characterized the levels of key enzymes in glucose metabolism. Morphological results showed that atretic follicles had increased gradual fibrosis in the stroma, decreased density of the inner microvasculature, lysis of the basement membrane, and collapse of GCs in the follicular antrum. Further results showed that CD68 macrophages and CD163 macrophages were initially distributed in the stroma of the healthy follicles. When the follicle was atretic, the spatiotemporal distribution of CD68 macrophages gradually migrated from the theca cells to the periphery of the collapsed GCs layer in the follicular antrum. Moreover, SLC39A14 and SLC16A1 were most significantly expressed in the GCs of healthy follicles (P < 0.01), and this correlation was positively associated with amino acids content. The results also showed that the key enzymes of glucose-related pathways (glycolysis (ALDOC, ENO1, HK1), pyruvate metabolism (LDHA, PDHA1), and tricarboxylic acid cycle (IDH1, OGDA, SDHB, CS) were significantly downregulated in GCs of atretic follicles by proteomic analysis (P < 0.05). These results revealed morphological changes and associated molecular events during follicular atresia, which may offer a new perspective on the underlying mechanisms of follicular atresia.
颗粒细胞的结构和分子功能障碍:猪滤泡闭锁的关键因素
颗粒细胞(GCs)的生理功能和代谢是高度调控的过程,协调细胞规范和形态发生,产生与卵泡发育密切相关的相关细胞因子和分泌物。然而,目前对GCs在卵泡闭锁中的分子功能还没有全面的认识。在这里,我们研究了滤泡的形态特征、纤维化、血管变化和免疫细胞分布。此外,我们分析了溶质载体运输蛋白(SLCs)与氨基酸的相关性,并表征了葡萄糖代谢关键酶的水平。形态学结果显示,闭锁卵泡间质逐渐纤维化增加,内部微血管密度降低,基底膜溶解,卵泡腔内GCs塌陷。进一步的结果表明,CD68和CD163巨噬细胞最初分布在健康卵泡的基质中。当卵泡闭锁时,CD68巨噬细胞的时空分布逐渐从卵泡腔内的卵泡膜细胞向塌陷的GCs层周围迁移。SLC39A14和SLC16A1在健康卵泡GCs中表达最为显著(P <; 0.01),且与氨基酸含量呈正相关。蛋白质组学分析结果还显示,糖酵解(ALDOC、ENO1、HK1)、丙酮酸代谢(LDHA、PDHA1)、三羧酸循环(IDH1、OGDA、SDHB、CS)等葡萄糖相关通路关键酶在闭锁卵泡GCs中显著下调(P <; 0.05)。这些结果揭示了卵泡闭锁过程中的形态学变化和相关分子事件,为研究卵泡闭锁的潜在机制提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Reproductive biology
Reproductive biology 生物-生殖生物学
CiteScore
3.90
自引率
0.00%
发文量
95
审稿时长
29 days
期刊介绍: An official journal of the Society for Biology of Reproduction and the Institute of Animal Reproduction and Food Research of Polish Academy of Sciences in Olsztyn, Poland. Reproductive Biology is an international, peer-reviewed journal covering all aspects of reproduction in vertebrates. The journal invites original research papers, short communications, review articles and commentaries dealing with reproductive physiology, endocrinology, immunology, molecular and cellular biology, receptor studies, animal breeding as well as andrology, embryology, infertility, assisted reproduction and contraception. Papers from both basic and clinical research will be considered.
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